Wideband apertures for active planar multifunction phased arrays

M. Povinelli, C. Grove
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引用次数: 3

Abstract

The authors address the problem of providing an aperture that is consistent in its operational bandwidth and grating lobe requirements and is configurable as a phased array of transmit/receive (T/R) modules. The design and performance of wideband phased-array apertures and an active line array suited for multifunction system applications are discussed. It is shown that radar performance in multifunction systems with dual-polarized apertures can yield an active VSWR (voltage standing wave ratio) that is, on the average, below 2.0:1.0 over a +or-60 degree scan in X-band. The mean active VSWR over the 6.0- to 18.0-GHz band scanning beyond 60 degrees (60 to 70 degrees) is below 3.3:1.0. It has been demonstrated that full polarization diversity can be accomplished and that the T/R circuit can be packaged in densities consistent with 18-GHz performance. It appears that 5 to 7 MMIC (monolithic microwave integrated circuit) chip X-band modules can be realized having 4- to 5-W output, 3-dB noise figure, and 30-dB gain for under $500.<>
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有源平面多功能相控阵的宽带孔径
作者解决了提供在其工作带宽和光栅瓣要求上一致的孔径的问题,并且可以配置为发射/接收(T/R)模块相控阵。讨论了适用于多功能系统的宽带相控阵孔径和有源线阵的设计和性能。研究表明,在具有双极化孔径的多功能系统中,雷达性能可以产生有源VSWR(电压驻波比),即在x波段+或60度扫描时,平均低于2.0:1.0。60度(60 ~ 70度)以上6.0 ~ 18.0 ghz波段扫描的平均有源驻波比低于3.3:1.0。实验证明,完全极化分集可以实现,T/R电路可以封装在符合18ghz性能的密度中。似乎5到7个MMIC(单片微波集成电路)芯片x波段模块可以实现4到5w输出,3db噪声系数和30db增益,价格低于500美元
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